A Re-ranking Model for Dependency Parser with Recursive Convolutional Neural Network

May 21, 2015 ยท Declared Dead ยท ๐Ÿ› Annual Meeting of the Association for Computational Linguistics

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Authors Chenxi Zhu, Xipeng Qiu, Xinchi Chen, Xuanjing Huang arXiv ID 1505.05667 Category cs.CL: Computation & Language Cross-listed cs.LG, cs.NE Citations 47 Venue Annual Meeting of the Association for Computational Linguistics Last Checked 6 months ago
Abstract
In this work, we address the problem to model all the nodes (words or phrases) in a dependency tree with the dense representations. We propose a recursive convolutional neural network (RCNN) architecture to capture syntactic and compositional-semantic representations of phrases and words in a dependency tree. Different with the original recursive neural network, we introduce the convolution and pooling layers, which can model a variety of compositions by the feature maps and choose the most informative compositions by the pooling layers. Based on RCNN, we use a discriminative model to re-rank a $k$-best list of candidate dependency parsing trees. The experiments show that RCNN is very effective to improve the state-of-the-art dependency parsing on both English and Chinese datasets.
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